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首页> 外文期刊>Frontiers in Psychology >The Reliability of Neurological Measurement in the Vastus Medialis: Implications for Research and Practice
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The Reliability of Neurological Measurement in the Vastus Medialis: Implications for Research and Practice

机译:内翻神经神经测量的可靠性:对研究和实践的启示

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The integrity of the corticomotor pathway is paramount in the optimal functioning of skeletal muscle. However, variability of neurophysiological assessment via peripheral nerve and transcranial magnetic stimulation can render interpretation difficult. Seldom evidence exists regarding the reliability of such measurements in the leg extensors, which have important locomotive and functional roles. This study aimed to assess the test-retest reliability of peripheral, corticospinal and intracortical responses in the vastus medialis. Transcranial magnetic and direct current electrical nerve stimulation were delivered to sixteen healthy young adults (8M and 8F) on two separate occasions. The Hoffmann reflex, maximal compound wave, motor evoked potential, corticospinal silent period, intracortical facilitation, and short-interval intracortical inhibition were recorded from the vastus medialis at rest, and during controlled submaximal voluntary contraction. Relative reliability was quantified using intra-class correlation coefficient (ICC2,1). Absolute reliability was quantified using standard error of measurement (SEm) and minimal detectable change (MDC). Corticospinal silent period, corticospinal silent period/motor evoked potential ratio, active motor evoked potential, maximal Hoffman reflex, and passive short-interval intracortical inhibition demonstrated “good to excellent” relative reliability (ICC ≥ 0.643). Intracortical facilitation demonstrated the lowest relative reliability (ICC = 0.420–0.908). Corticospinal silent period displayed the lowest absolute reliability (SEm ≤ 18.68%). Good reliability of the maximal compound wave, Hoffman reflex, motor evoked potential, and corticospinal silent period allow for reliable neurological evaluation of peripheral and corticospinal pathways in the vastus medialis. Future research should investigate reliability of the intracortical (short-interval intracortical inhibition and intracortical facilitation) measures by using different paired-pulse stimulus parameters. These findings hold important implications for neurophysiological assessment conducted in the leg extensor group.
机译:皮质运动通路的完整性在骨骼肌的最佳功能中至关重要。然而,通过周围神经和经颅磁刺激的神经生理学评估的可变性可能使解释变得困难。很少有证据表明此类测量在腿部伸肌中的可靠性,而腿伸肌具有重要的机车和功能作用。这项研究旨在评估在股内侧内侧的外周,皮质脊髓和皮质内反应的重测信度。在两个不同的情况下,经颅磁和直流电神经刺激分别输送给了十六名健康的年轻人(8M和8F)。霍夫曼反射,最大复合波,运动诱发电位,皮质脊髓沉默期,皮质内促进和短期间隔皮质内抑制被记录从静止时和控制下最大自愿收缩期间的股内侧。使用组内相关系数(ICC2,1)量化相对可靠性。使用标准测量误差(SEm)和最小可检测变化(MDC)量化绝对可靠性。皮质脊髓沉默期,皮质脊髓沉默期/运动诱发电位比,主动运动诱发电位,最大霍夫曼反射和被动短间隔皮质内抑制表现出“良好至优异”的相对可靠性(ICC≥0.643)。皮层内促进表现出最低的相对可靠性(ICC = 0.420–0.908)。皮质脊髓静默期显示出最低的绝对可靠性(SEm≤18.68%)。最大复合波,霍夫曼反射,运动诱发电位和皮质脊髓静默期的良好可靠性允许对内侧腓肠肌周围和皮质脊髓通路进行可靠的神经学评估。未来的研究应通过使用不同的成对脉冲刺激参数来研究皮层内(短间隔皮层内抑制和皮层内促进)措施的可靠性。这些发现对腿伸肌群进行神经生理评估具有重要意义。

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